The biomimetic micro air vehicles (BMAV) are unmanned, micro-scaled aircraft that are bio-inspired from flying organisms to achieve the lift and thrust by flapping their wings. There are still many technological challenges involved with designing the BMAV. One of these is designing the ultra-lightweight materials and structures for the wings that have enough mechanical strength to withstand continuous flapping at high frequencies. Insects achieve this by having chitin-based, wing frame structures that encompass a thin, film membrane. The main objectives of this study are to design a biodegradable BMAV wing (inspired from the dragonfly) and analyze its mechanical properties. The dragonfly-like wing frame structure was bio-mimicked and fabric...
Flexible deformation of the insect wing has been proven to be beneficial to lift generation and powe...
Considering a modern approach to design, one of the viable options for developing innovative project...
The unmatched performance of insect flight is a motivation for bio-inspired designs of synthetic win...
The biomimetic micro air vehicles (BMAV) are unmanned, micro-scaled aircraft that are bio-inspired f...
Biomimetic Micro Air Vehicles (BMAV) are unmanned, micro-scaled aircrafts that are bioinspired from ...
Biomimetic micro-aerial vehicle (BMAV) are micro-scaled, unmanned aircraft based on flying biologica...
This article studies the elastic properties of several biomimetic micro air vehicle (BMAV) wings tha...
This article studies the elastic properties of several biomimetic micro air vehicle (BMAV) wings tha...
AbstractThis article examines the suitability of fabricating artificial, dragonfly-like, wing frames...
This article examines the suitability of two different materials which are black graphite carbon fib...
This research effort presents conceptual micro scale air vehicles whose total dimensions are less th...
Mimicking insect flights were used to design and develop new engineering materials. Although extensi...
Using the method of structural finite element topology optimization and analysis of the hindwings of...
This article examines the suitability of two different materials which are black graphite carbon fib...
Micro Aerial Vehicles (MAVs) are an emerging class of uninhabited aerial vehicle (UAV). Their reduce...
Flexible deformation of the insect wing has been proven to be beneficial to lift generation and powe...
Considering a modern approach to design, one of the viable options for developing innovative project...
The unmatched performance of insect flight is a motivation for bio-inspired designs of synthetic win...
The biomimetic micro air vehicles (BMAV) are unmanned, micro-scaled aircraft that are bio-inspired f...
Biomimetic Micro Air Vehicles (BMAV) are unmanned, micro-scaled aircrafts that are bioinspired from ...
Biomimetic micro-aerial vehicle (BMAV) are micro-scaled, unmanned aircraft based on flying biologica...
This article studies the elastic properties of several biomimetic micro air vehicle (BMAV) wings tha...
This article studies the elastic properties of several biomimetic micro air vehicle (BMAV) wings tha...
AbstractThis article examines the suitability of fabricating artificial, dragonfly-like, wing frames...
This article examines the suitability of two different materials which are black graphite carbon fib...
This research effort presents conceptual micro scale air vehicles whose total dimensions are less th...
Mimicking insect flights were used to design and develop new engineering materials. Although extensi...
Using the method of structural finite element topology optimization and analysis of the hindwings of...
This article examines the suitability of two different materials which are black graphite carbon fib...
Micro Aerial Vehicles (MAVs) are an emerging class of uninhabited aerial vehicle (UAV). Their reduce...
Flexible deformation of the insect wing has been proven to be beneficial to lift generation and powe...
Considering a modern approach to design, one of the viable options for developing innovative project...
The unmatched performance of insect flight is a motivation for bio-inspired designs of synthetic win...